Sustainable Production of Biofuels through Membrane-Integrated Systems

Ramesh Kumar, A. K. Ghosh, P. Pal
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引用次数: 28

Abstract

Literature on biodiesel production over the last 10 years (2007–2018) has been critically reviewed directing further research toward membrane-based sustainable and green production. The manuscript discusses how biodiesel production strategies have evolved in the recent years through adoption of better feedstock, better catalysts, more efficient reactor technology, and through incorporation of more efficient downstream separation-purification techniques. The review reveals that though transesterification reaction between alcohol and plant oil/animal fats leading to production of biodiesel is simple, the downstream separation and purification of the final product (fatty acid methyl esters) is quite challenging. This review shows that productivity can be enhanced through new generation catalysts, use of green solvents, and a more efficient reactor technology while the use of tailor-made membrane in appropriate modules holds the promise of low-cost and eco-friendly downstream purification. It is exposed that a membrane-based technology can bring about high degree of process intensification, whereas recovery and reuse of catalysts and alcohol are likely to add to the economy of the process, resulting in sustainable production technology.
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通过膜集成系统可持续生产生物燃料
过去10年(2007-2018年)关于生物柴油生产的文献已经被严格审查,指导进一步研究基于膜的可持续和绿色生产。手稿讨论了近年来生物柴油生产策略如何通过采用更好的原料,更好的催化剂,更有效的反应器技术,并通过合并更有效的下游分离净化技术而发展。综述表明,醇与植物油/动物脂肪的酯交换反应制备生物柴油虽然简单,但最终产物(脂肪酸甲酯)的下游分离纯化却颇具挑战性。这一综述表明,通过新一代催化剂、绿色溶剂的使用和更高效的反应器技术可以提高生产效率,而在适当的模块中使用定制的膜有望实现低成本和环保的下游净化。研究表明,基于膜的技术可以带来高度的过程集约化,而催化剂和酒精的回收和再利用可能会增加该过程的经济性,从而实现可持续的生产技术。
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